• 제목/요약/키워드: Fuel Quality

검색결과 719건 처리시간 0.036초

연료품질 및 연비계산 방법 변화에 따른 연비특성 분석 (Analysis of fuel economy characteristics depending on the fuel quality and calculation method changed)

  • 이민호;임완규;임재혁;김기호
    • 동력기계공학회지
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    • 제20권4호
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    • pp.52-62
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    • 2016
  • Nowadays, emissions of a vehicle are been getting by testing on a chassis dynamometer and a test modes. Also, fuel efficiency is calculated by carbon-balance method that is applying the emissions(CO, THC and $CO_2$) to the fuel calculation formular. In Korea, before 2014, the formular did not include the fuel factors (density, net heat value and carbon weight fraction), but the constants were based on the fuel properties of 2000s. So, this formular did not consider a characteristic of test fuel property that was changed when progressing fuel efficiency test. The characteristics of test fuel property which was distributed in domestic have a difference of quality depending on production regions and oil-refining facilities. Because the fuel properties are variable value during refineries, crude oils and blending contents of a bio-fuel, vehicle fuel is changed for each test. Therefore, the fuel qualities need to apply for a fuel economy test. In this paper, changing patterns of a fuel properties were reviewed during history of fuel standards. Also, the appropriateness of the methods was discussed by calculating and comparing fuel economies with the fuel factors and the constants.

국내 차량 인증시험용 표준연료(경유) 도입 필요성 검토 연구 (A feasibility study on Introducing Reference Fuel(Diesel) for Testing Vehicles in South Korea)

  • 황인하;강형규;성상래;송호영;하종한;나병기
    • 한국응용과학기술학회지
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    • 제34권4호
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    • pp.974-985
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    • 2017
  • 2016년 기준 국내 자동차 등록대수는 약 2,200만대를 육박하고 있으나[1], 국내 자동차용 표준연료에 대한 기준은 부재한 상황이다. 자동차용 표준연료(Reference Fuel)는 차량의 연비와 배출가스를 인증하거나 새로운 자동차를 개발할 때 차량의 성능 등을 평가하기 위해 사용하는 연료를 의미한다. 현재 국내에는 차량의 배출가스, 성능, 연비시험 등을 위해 유통연료를 사용하고 있으며, 유통연료는 석유 및 석유대체연료사업법과 대기환경보전법 상의 품질기준을 만족하지만 각 제조사의 원료와 공정 등에 따라 연료의 물성 차이가 있어 차량 시험 시 편차가 발생할 수 있다. 본 연구에서는 국내 유통되는 자동차용 경유 품질모니터링 분석결과를 바탕으로 자동차용 경유의 시험용 표준연료 기준(안)을 설정하고, CRDI 방식의 차량에 적용하여 표준연료 기준(안)을 평가하였다.

바이오디젤 구성성분 합성 및 연료특성 분석 (Synthesis of Biodiesel Components and Analysis of Their Fuel Characters)

  • 임영관;정충섭;한관욱;도진우
    • Tribology and Lubricants
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    • 제30권1호
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    • pp.52-58
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    • 2014
  • Because food crops serve as the raw materials for biodiesel, the increasing use of biodiesel as an alternative fuel can lead to adverse effects such as food price inflation and may contribute to global starvation. To solve these problems, efforts are being made to explore various nonedible raw materials for producing biodiesel. Different raw materials impart different fuel characteristics to biodiesel. In this study, we synthesized pure fatty acid methyl ester (FAME), which is a biodiesel component, and then analyzed its fuel properties. The fuel properties of pure FAME would be useful in producing biodiesel from various new raw materials.

국내 표준연료(휘발유) 도입 필요성 검토 연구 (A feasibility study on Introducing the Reference Fuel(Gasoline) for Testing Vehicles in South Korea)

  • 강형규;성상래;송호영;황인하;하종한;나병기
    • 한국응용과학기술학회지
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    • 제33권4호
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    • pp.824-835
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    • 2016
  • 2015년 기준 자동차 등록대수는 약 2,100만대를 넘어 1가구당 1.07대를 보유하고 있는 실정이나[1], 국내 자동차용 표준연료에 대한 기준은 부재한 상황이다. 자동차용 표준연료(reference fuel)는 차량의 연비와 배출가스를 인증하거나 새로운 자동차를 개발할 때 차량의 성능 등을 평가하기 위해 사용하는 연료를 의미한다. 현재 국내에는 차량의 배출가스, 성능, 연비시험 등을 위해 유통연료를 사용하고 있으며, 유통연료는 석유 및 석유대체연료사업법과 대기환경보전법 상의 품질기준을 만족하지만 각 제조사의 원료와 공정 등에 따라 연료의 물성차이가 있어 차량 시험 시 편차가 발생할 수 있다. 본 연구에서는 국내 유통되는 휘발유 품질모니터링 분석결과를 바탕으로 표준연료 기준(안)을 설정하고, GDI와 MPI 연료 분사 방식의 차량에 적용하여 비교 평가한 결과, 실제 유통연료를 사용했을 때 최대 3.8%까지 발생하는 연비차이가 1.1%까지 감소함을 확인할 수 있었다.

PC를 이용한 품질정보시스템의 전산화 (Computerization of Quality Information System Using Personal Computers)

  • 박철주;오연우
    • 품질경영학회지
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    • 제24권2호
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    • pp.113-127
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    • 1996
  • A various quality data are produced during nuclear fuel fabrication. In order to control quality data efficiently, Computerization of Quality Information System(QIS) using personal computer was established. Database control software and analysis software were developed for QIS. QIS was applied the fuel manufacturing and quality inspection. Quality trend analysis, process control, process capability and quality history docket for nuclear fuel manufacturing were performed by QIS. Through the Quality Information System, quality assurance, quality control, process control and manufacturing engineering were performed efficiently in nuclear fuel manufacturing.

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연료주입구 Door open 음의 음질분석 (Sound Quality analysis for Fuel Filler Door open system)

  • 박동철;이동훈;정승균
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2000년도 춘계학술대회논문집
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    • pp.1467-1472
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    • 2000
  • This paper describes an investigative study for Fuel Filler Door open sound. Using statistical method of analyzing jury preference data, we extract important factor for subjective feeling and also define sound quality index and sound quality guideline for development of fuel filler system.

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디젤차량 연비시험에 있어 시험온도 및 냉각팬 조건이 미치는 영향분석에 관한 연구 (A Study on the Influence of Test Temperature & Cooling Fan Condition on the Fuel Test of Diesel Vehicle)

  • 김현진;김성우;임재혁;노경하;이정천;김기호;오상기
    • 동력기계공학회지
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    • 제21권6호
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    • pp.46-55
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    • 2017
  • Due to the arise of natural disasters caused by global warming, consumers have more interest in the fuel efficiency of their vehicles, and fuel efficiency became an important factor in comparing vehicles. In this market situation, methods to measure fuel efficiency has become one of the main interests of vehicle related organizations and laboratories, and the current method to measure fuel efficiency is to follow the notification established by the ministry of trade, industry and energy, ministry of environment, and the ministry of land, infrastructure and transport. In this study, we analyze the influence of vehicle fuel efficiency according to test temperature and cooling fan condition which have the possibility to cause difference in fuel efficiency. The analysis results of the influence of the fuel efficiency according to the test temperature, the difference of the fuel efficiency of the test temperature ($21{\sim}29^{\circ}C$) within the allowable range of the notification showed a maximum difference of 2.9%. Therefore, it is necessary to consider the introduction of a test method that permits only the temperature change based on the reference point as the allowable range even in the test within the allowable range. The analysis of the influence of the fuel efficiency according to the cooling method showed no significant effect, and it seems reasonable to maintain the test method of the current notification.

수분오염에 따른 경유의 연료적 특성 (The Fuel Characteristics of Diesel by Water Contamination)

  • 임영관;원기요;강병석;박소휘;박장민;강대혁
    • Tribology and Lubricants
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    • 제36권6호
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    • pp.385-390
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    • 2020
  • It rains heavily, such as long rain and typhoons, during a typical rainy season in Korea. In this season, several fuel contamination accidents by water and vehicular problems caused by water contaminated fuel occur. Many research groups have studied the effects of water contaminated fuel on vehicles and environment. However the characteristics of water contaminated fuel have not been studied. In this study, we prepared diesel samples with a constant ratio of water (0~30 volume %) using an emulsifier. Then, we analyzed these diesel samples for their representative fuel properties. In the analytical results, diesel with 30% water showed an increase in fuel properties such as density (823→883 kg/㎥), kinematic viscosity (2.601→6.345 ㎟/s), flash point (47→56℃), pour point (-22→2℃), CFPP (cold filter plugging point) (-17→20℃) and copper corrosion number (1a→2a). The low temperature characteristics, such as low pour point and CFPP, blocks the fuel filter in the cold season. In addition, water contaminated diesel decreases lubricity (190→410 ㎛) under high frequency reciprocating rig (HFRR) and derived cetane number (54.81→34.25). The low lubricity of fuel causes vehicle problem such as pump and injector damage owing to severe friction. In addition, the low cetane diesel fuel increases exhaust gases such as NOx and particulate matters (PM) owing to incomplete combustion. This study can be used to identify the problems caused by water contamination to vehicle and fuel facilities.

중질 잔사유의 연소성 분석과 보조 분사에 의한 연소성 향상에 관한 검토 (Examination on Combustion Quality Analysis of Residue Heavy Fuel Oil and Improvement of Combustion Quality Using Pre-injection)

  • 유동훈
    • 동력기계공학회지
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    • 제18권6호
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    • pp.113-119
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    • 2014
  • Due to the development of the petroleum refining technology and continuously increased demand from markets, a quantity of gasoline and diesel oil produced from a restricted quantity of crude oil has been increasing, and residual fuel to be used at marine diesel engines has been gradually becoming low quality. As a result, it was recently reported that trouble oils which cause abnormal combustion such as knocking with extreme noise and misfire from internal combustion engines were increasing throughout the world. In this study, an author investigated ignitability and combustion quality by using combustion analyzer with constant volume(FCA, Fuel Combustion Analyzer) and middle speed diesel engine about MDO(Marine Diesel Oil), HFO(Heavy Fuel Oil), LCO(Light Cycle Oil) and Blend-HFO which was blended LCO of 1000 liters with HFO of 600 liters. Moreover, for betterment of ignitability and combustion quality of injected fuels, multi-injection experiment was carried out in the diesel engine using Blend-HFO. According to the results of FCA analysis, ignitability and combustion quality was bad in the order of MDO

급속 열분해 바이오 오일의 활용 및 품질기준 (Utilization and Quality Standard of Fast Pyrolysis Bio-Oil)

  • 박조용;도진우
    • 한국수소및신에너지학회논문집
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    • 제31권2호
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    • pp.223-233
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    • 2020
  • Fast pyrolysis is one of the most promising technologies for converting biomass to liquid fuels. Pyrolysis bio-oil can replace petroleum-based fuels used in various thermal conversion devices. However, pyrolysis bio-oil is completely different from petroleum fuels. Therefore, in order to successfully use pyrolysis bio-oil, it is necessary to understand the fuel characteristics of pyrolysis bio-oil. This paper focuses on fuel characteristics and upgrading methods of pyrolysis bio-oil and discusses how these fuel characteristics can be applied to the use of pyrolysis bio-oils. In addition, the fuel quality standards of fast pyrolysis bio-oil were examined.